Cherry Pollen and Bee Bread Enhance Fitness of Chaetodactylus hirashimai (Acari: Sarcoptiformes): A Two-Sex Life-Table Evaluation of Four Pollen Diets
Simple Summary
Abstract
1. Introduction
2. Materials and Methods
2.1. Rearing and Feed Treatments
2.2. Life-Table Study
2.3. Life-Table Analysis
3. Results
3.1. Developmental Time, Longevity, and Fecundity
3.2. Life-Table and Population Parameters
4. Discussion
5. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Zonato, V.; Wang, F.H.; Yang, P. The pollination of mason bees on several fruit trees in China and its application. Chin. Bull. Entomol. 2008, 45, 862–868. [Google Scholar]
- Wang, G.; Lin, L.; Xue, X.; Wang, J.; Tao, J. Research and application progress of Osmia pollnation techniques on apple in China. Decid. Fruit. 2018, 50, 25–28. [Google Scholar]
- Ou, Y.F.; Wang, L.N.; Yan, Z.; Men, X.Y.; Ge, F. Evaluation of insect pollination and service value in China’s agricultural ecosystems. Acta Ecol. Sin. 2019, 39, 131–145. [Google Scholar] [CrossRef] [Scilit]
- Wei, Y.P.; Yuan, F.; Zhang, Y.L. The flower-visiting habit and the necessary amount of beekeeping of the wall bee. J. Northwest A&F Univ. (Nat. Sci. Ed.) 2000, 57, 76–79. [Google Scholar]
- Lyu, Z.Y.; Feng, M.; Nie, L.; Zhou, T.; Yu, K.; Li, L.L.; Men, X.Y.; Sun, M.; Yu, Y. Evaluation of the pollination efciency of apple trees by Osmia excavata Alfken (Hymenoptera: Megachilidae). Neotrop. Entomol. 2024, 53, 490–498. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- He, Z.W.; Zhou, W.R. Study on the effects of Osmia excavata, Apis mellifera, and artificial pollination on apple pollination. Apic. China 2009, 60, 9–11. [Google Scholar]
- Lyu, Z.Y.; Zhou, T.; Sun, M.; Feng, M.; Guo, W.X.; Nei, L.; Song, Y.Y.; Men, X.Y.; Li, L.L.; Yu, Y. Exploratory comparison of flower visiting behavior and pollination ability of mason bees, bumble bees, and honey bees. J. Econ. Entomol. 2023, 116, 1949–1956. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Zhang, F.L.; Yuan, F. Study on pollination efficiency of Osmia excavate. Chin. Agric. Sci. Bull. 1997, 13, 18–20. [Google Scholar]
- Dong, X.Y.; Jin, Z.; Xi, J.Y.; Liu, F. Effects of different pollination methods on apple quality. Mod. Agr. Sci. Technol. 2012, 41, 129. [Google Scholar]
- Lyu, Z.Y.; Liu, H.G.; Zhou, T.; Feng, M.; Lu, Z.B.; Nie, L.; Wang, G.P.; Wang, G.Z.; Li, L.L.; Men, X.Y.; et al. Comparison of the flight ability of diapausing and post-diapause Osmia excavata Alfken (Hymenoptera: Megachilidae) at different temperatures. J. Asia-Pac. Entomol. 2024, 27, 102205. [Google Scholar] [CrossRef] [Scilit]
- Shi, X.Y.; Zou, Y.; Luo, A.R.; Niu, Z.Q.; Zhu, C.D. Issues and prospects of mason bee pollination application. Chin. J. Appl. Entomol. 2022, 59, 1215–1222. [Google Scholar] [CrossRef]
- Li, S.Y.; Jiang, S.C.; Lv, Z.M.; Liu, W.H.; Chi, J.F. Common problems and countermeasures of Osmia pollination in apple orchards. North Fruits 2009, 53, 34–35. [Google Scholar]
- Li, J.; Wang, Q.Y.; Song, P.; Nan, G.Z.Y.; Cao, K.Q. Major factors influencing nesting rate of Osmia in apple orchard. China Fruits 2011, 55, 51–54. [Google Scholar]
- Cao, Y.B.; Zhou, X.H.; Ye, B.H.; Li, L.L.; Lu, Z.B.; Xu, H.; Li, W.Q.; Yu, Y.; Men, X.Y. Factors limiting Osmia excavata Alfken populations. Chin. J. Appl. Entomol. 2017, 54, 652–659. [Google Scholar]
- Zhao, J.Y. Preliminary Study on Diapause Research and Investigation of Population Damage Status of Concalyma vulgaris. Master’s Thesis, Yantai University, Yantai, China, 2019. [Google Scholar]
- Kurosa, K. Two new Chaetodactylus (Acari, Chaetodactylidae) associated with Osmia (Hymenoptera, Megachilidae) in Japan. Kontyu 1987, 55, 373–381. [Google Scholar]
- Wei, Y.; Zhai, H.; Chen, J. Chaetodactylus hirashimai Kurosa, 1987, a newly recorded species and genus of the family Chaetodactylidae (Acari, Sarcoptiformes) from China, which harmful to Osmia bees. Acta Arachnol. Sin. 2016, 25, 1–5. [Google Scholar]
- Zhai, H.; Wang, G.P.; Xue, X.M.; Wang, J.Z.; Yu, S.Z.; Tang, Y.H.; Cao, H.J. Preliminary report on mite damage to Osmia bee comb tube nest in apple orchard of Shandong. China Fruits 2015, 57, 82–84. [Google Scholar]
- Zhai, H.; Wang, G.P.; Li, X.J.; Xue, X.M.; Wang, J.Z. Preliminary report on mite damage to Osmia bee comb tube nest in apple orchard of Weihai. Shandong Agr. Sci. 2016, 48, 106–108. [Google Scholar]
- Qu, D.C.; Qiu, J.Y.; Maeta, Y. Biological character of Tortonia sp. Genom. Appl. Biol. 2010, 29, 495–500. [Google Scholar]
- Yamada, M. Control of the chaetodactylus mite, Chaetodactylus nipponicus Kurosa, an important mortality agent of hornfaced osmia bee, Osmia cornifrons Radoszkowski. Bull. Aomori Apple Exp. Stn. 1990, 26, 39–77. [Google Scholar]
- Zhou, X.H.; Song, M.J.; Cao, Y.B.; Zhang, A.S.; Li, L.L.; Men, X.Y.; Zhang, S.C.; Zhuang, Q.Y.; Zhai, Y.F.; Yu, Y. Screen safe chemicals for Osmia excavata Alfken against the parasitic mite (Tortonia sp.) in the laboratory. J. Environ. Entomol. 2017, 39, 411–418. [Google Scholar]
- Zhai, H.; Wang, J.Z.; Wang, G.P.; Xue, X.M.; Zhang, Y.L.; Li, X.J. Control effects of several acaricides on mites on horned-face bee Osmia cornifrons and the safety evaluation. J. Plant Prot. 2018, 45, 788–794. [Google Scholar]
- Ma, M.; Jiao, S.; Liu, Y.; Wang, E.D.; Fan, Q.H. Effects of diets on the growth, development, and reproduction of thepredatory mite Neoseiulus zwoelferi. J. Plant Prot. 2024, 51, 123–131. [Google Scholar]
- Rahmani Piyani, A.; Shishehbor, P.; Kocheili, F.; Riddick, E. Comparison of natural prey Tetranychus turkestani, date palm pollen, and bee pollen diets on development, reproduction, and life table parameters of the predator Amblyseius swirskii. Acarologia 2021, 61, 890–900. [Google Scholar] [CrossRef] [Scilit]
- Chakrabarti, P.; Morré, J.T.; Lucas, H.M.; Maier, C.S.; Sagili, R.R. The omics approach to bee nutritional landscape. Metabolomics 2019, 15, 127. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Ghosh, S.; Sun, S.; Jang, H.; Jung, C. Amino Acid Dynamics in Bee Feed: Comparative Account of Amino Acid Composition among Pollen, Bee-pollen and Bee Bread. J. Apic. 2024, 39, 127–132. [Google Scholar] [CrossRef] [Scilit]
- Zhang, Q.L.; Bao, D.E.; Yan, Z.H.; Yan, W.W.; Liu, Z.C.; Hu, H.L. Study on Storage Characteristics of Three Species of Ornamental Crabapple Pollen. Shandong Agric. Sci. 2016, 48, 54–56+63. [Google Scholar]
- Chi, H.; Liu, H. Two new methods for the study of insect popwlation ecology. Bul. Inst. Zool. Acad. Sin. 1985, 24, 225–240. [Google Scholar]
- Chi, H. Life-table analysis incorporating both sexes and variable development rate among indviduals. Environ. Entomol. 1988, 17, 26–34. [Google Scholar] [CrossRef] [Scilit]
- Chi, H.; Su, H.Y. Age-stage, two-sex life tables of Aphidius gifuensis (Ashmead) (Hymenoptera: Braconidae) and its host Myzus persicae (Sulzer) (Homoptera: Aphididae) with mathematical proof of the relationship between female fecundity and the net reproductive rate. Environ. Entomol. 2006, 35, 10–21. [Google Scholar] [CrossRef] [Scilit]
- Tuan, S.J.; Lee, C.C.; Chi, H. Population and damage projection of Spodoptera litura (F.) on peanuts (Arachishypogaea L.) under different conditions using the age-stage, two-sex life table. Pest Manag. Sci. 2014, 70, 805–813. [Google Scholar] [CrossRef] [Scilit]
- Chi, H.; You, M.; Atlıhan, R.; Smith, C.L.; Kavousi, A.; Özgökçe, M.S.; Güncan, A.; Tuan, S.J.; Fu, J.W.; Xu, Y.Y.; et al. Age-Stage, two-sex life table: An introduction to theory, data analysis, and application. Entomol. Gen. 2020, 40, 103–124. [Google Scholar] [CrossRef] [Scilit]
- Chi, H. TWOSEX-MSChart: A Computer Program for the Age-Stage, Two-Sex Life Table Analysis. 2025. Available online: https://www.faas.cn/datafile/download.shtml?fileId=810659336655220000&siteId=530418521222970001&ticket=anonymous (accessed on 4 October 2025).
- Chi, H.; Kavousi, A.; Gharekhani, G.; Atlihan, R.; Salih Özgökçe, M.; Güncan, A.; Gökçe, A.; Smith, C.L.; Benelli, G.; Guedes, R.N.C.; et al. Advances in theory, data analysis, and application of the age-stage, two-sex life table for demographic research, biological control, and pest management. Entomol. Gen. 2023, 43, 705–732. [Google Scholar] [CrossRef] [Scilit]
- Zhao, Y.; Zhao, C.L.; Yang, X.B.; Chi, H.; Dai, P.; Desneux, N.; Benelli, G.; Zang, L.S. Yacon as an alternative host plant for Encarsia formosa mass-rearing: Validating a multinomial theorem for bootstrap technique in life table research. Pest Manag. Sci. 2021, 77, 2324–2336. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Morrison, B.; Newburn, L.R.; Fitch, G. Food as Medicine: A Review of Plant Secondary Metabolites from Pollen, Nectar, and Resin with Health Benefits for Bees. Insects 2025, 16, 414. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Mu, M.; Zhu, J.; Xiao, F.; Liu, M.; Zhang, H.; Guo, J.; Liu, J.; Fu, D.; Jin, D.; Wen, L.; et al. Comparison of life tables and mate choice of two Neoseiulus californicus (Acari: Phytoseiidae) strains reared on natural and alternative prey. J. Econ. Entomol. 2025, 118, 1643–1652. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Zhang, Y.N.; Bi, S.J.; Huang, C.Q.; Ran, L.; Yang, L.; Xiao, L.; Tan, Q.M.; Wang, E.D. How do host plants mediate the development and reproduction of Phytoseiulus persimilis (Acari: Phytoseiidae) when fed on Tetranychus evansi or Tetranychus urticae Koch (Acari: Tetranychidae)? Insects 2026, 17, 133. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Kefayat, F.; Hemmati, S.A.; Rasekh, A.; Nasernakhaei, F.; Stelinski, L.L. Suitability of artificial diets containing various types of pollen grains to Helicoverpa armigera (Hübner, 1808): Nutritional performance and digestive enzyme response. Insects 2025, 16, 429. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Xie, J.; Wu, H.; Pang, H.; De Clercq, P. An artificial diet containing plant pollen for the mealybug predator Cryptolaemus montrouzieri. Pest Manag. Sci. 2016, 73, 541–545. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Sampat, G.; Chuleui, J. Changes in nutritional composition from bee pollen to pollen patty used in bumblebee rearing. J. Asia-Pac. Entomol. 2020, 23, 701–708. [Google Scholar] [CrossRef] [Scilit]
- Ghosh, S.; Namin, S.M.; Jung, C. Differential bacterial community of bee bread and bee pollen revealed by 16s rRNA High-Throughput Sequencing. Insects 2022, 13, 863. [Google Scholar] [CrossRef] [Scilit] [PubMed]




| Development Time | Feed Treatment | |||||||
|---|---|---|---|---|---|---|---|---|
| Cherry Pollen | Cherry Bee Bread | Apple Pollen | Apple Bee Bread | |||||
| n | Mean ± SE | n | Mean ± SE | n | Mean ± SE | n | Mean ± SE | |
| Egg duration (day) | 52 | 4.52 ± 0.10 a | 51 | 4.24 ± 0.08 b | 52 | 4.54 ± 0.08 a | 54 | 4.54 ± 0.08 a |
| Larva duration (day) | 48 | 3.96 ± 0.12 b | 48 | 5.46 ± 0.10 a | 47 | 3.87 ± 0.10 b | 52 | 5.38 ± 0.08 a |
| Protonymph duration (day) | 41 | 3.85 ± 0.26 ab | 46 | 4.15 ± 0.09 ab | 36 | 3.69 ± 0.25 b | 48 | 4.40 ± 0.11 a |
| Deutonymph duration (day) | 32 | 5.59 ± 0.37 ab | 45 | 5.13 ± 0.18 b | 31 | 6.10 ± 0.29 a | 46 | 5.26 ± 0.09 b |
| Preadult duration (day) | 32 | 17.94 ± 0.36 c | 45 | 18.96 ± 0.21 b | 31 | 17.97 ± 0.30 c | 46 | 19.57 ± 0.20 a |
| Development Stage | Feed Treatment | |||
|---|---|---|---|---|
| Cherry Pollen | Cherry Bee Bread | Apple Pollen | Apple Bee Bread | |
| Egg | 10.34 ± 3.99% a | 0.00 ± 0.00% b | 7.14 ± 3.45% a | 0.00 ± 0.00% b |
| Larva | 6.90 ± 3.33% a | 5.88 ± 3.30% a | 8.93 ± 3.80% a | 3.70 ± 2.56% a |
| Protonymph | 12.07 ± 4.27% ab | 3.92 ± 2.72% b | 19.64 ± 5.31% a | 7.41 ± 3.55% b |
| Deutonymph | 15.52 ± 4.75% a | 1.96 ± 1.95% b | 8.93 ± 3.79% ab | 3.70 ± 2.57% b |
| Preadult | 44.83 ± 6.53% a | 11.76 ± 4.50% b | 44.64 ± 6.63% a | 14.81 ± 4.83% b |
| Parameter | Feed Treatment | |||||||
|---|---|---|---|---|---|---|---|---|
| Cherry Pollen | Cherry Bee Bread | Apple Pollen | Apple Bee Bread | |||||
| n | Mean ± SE | n | Mean ± SE | n | Mean ± SE | n | Mean ± SE | |
| Adult longevity (day) | 32 | 35.94 ± 1.33 a | 45 | 36.62 ± 0.99 a | 31 | 29.90 ± 1.16 b | 46 | 34.28 ± 0.86 a |
| Female adult longevity (day) | 16 | 34.25 ± 2.53 abc | 22 | 38.05 ± 0.83 a | 19 | 28.32 ± 1.65 c | 23 | 34.87 ± 0.84 b |
| Male adult longevity (day) | 16 | 37.63 ± 0.78 a | 23 | 35.26 ± 1.77 ab | 12 | 32.42 ± 1.24 b | 23 | 33.70 ± 1.52 b |
| Adult preoviposition period (APOP) (day) | 16 | 2.06 ± 0.26 b | 22 | 3.86 ± 0.34 a | 19 | 1.32 ± 0.19 c | 23 | 1.35 ± 0.10 c |
| Total preoviposition period (TPOP) (day) | 16 | 20.25 ± 0.41 b | 22 | 22.41 ± 0.44 a | 19 | 19.11 ± 0.33 c | 23 | 20.87 ± 0.31 b |
| Fecundity (F) (eggs/female) | 16 | 179.50 ± 15.83 b | 22 | 278.55 ± 10.87 a | 19 | 117.05 ± 8.66 c | 23 | 270.65 ± 12.20 a |
| Population Parameter | Feed Treatment | |||
|---|---|---|---|---|
| Cherry Pollen | Cherry Bee Bread | Apple Pollen | Apple Bee Bread | |
| r (day−1) intrinsic rate of increase | 0.14 ± 0.01 a | 0.15 ± 0.01 a | 0.14 ± 0.01 a | 0.15 ± 0.01 a |
| λ (day−1) finite rate of increase | 1.15 ± 0.01 a | 1.16 ± 0.01 a | 1.15 ± 0.01 a | 1.16 ± 0.01 a |
| R0 (offspring/individual) net reproductive rate | 49.52 ± 11.40 b | 120.16 ± 19.87 a | 39.71 ± 7.93 b | 115.28 ± 18.90 a |
| T (day) mean generation time | 28.68 ± 0.46 c | 32.96 ± 0.48 a | 26.32 ± 0.36 d | 31.57 ± 0.49 b |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2026 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license.
Share and Cite
Lyu, Z.; Song, H.; Zhang, Y.; Huang, Q.; Sun, M. Cherry Pollen and Bee Bread Enhance Fitness of Chaetodactylus hirashimai (Acari: Sarcoptiformes): A Two-Sex Life-Table Evaluation of Four Pollen Diets. Insects 2026, 17, 797. https://doi.org/10.3390/insects17080797
Lyu Z, Song H, Zhang Y, Huang Q, Sun M. Cherry Pollen and Bee Bread Enhance Fitness of Chaetodactylus hirashimai (Acari: Sarcoptiformes): A Two-Sex Life-Table Evaluation of Four Pollen Diets. Insects. 2026; 17(8):797. https://doi.org/10.3390/insects17080797
Chicago/Turabian StyleLyu, Zhaoyun, Hongyan Song, Yue Zhang, Qitong Huang, and Meng Sun. 2026. "Cherry Pollen and Bee Bread Enhance Fitness of Chaetodactylus hirashimai (Acari: Sarcoptiformes): A Two-Sex Life-Table Evaluation of Four Pollen Diets" Insects 17, no. 8: 797. https://doi.org/10.3390/insects17080797
APA StyleLyu, Z., Song, H., Zhang, Y., Huang, Q., & Sun, M. (2026). Cherry Pollen and Bee Bread Enhance Fitness of Chaetodactylus hirashimai (Acari: Sarcoptiformes): A Two-Sex Life-Table Evaluation of Four Pollen Diets. Insects, 17(8), 797. https://doi.org/10.3390/insects17080797

